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Elmet Technologies

Solvay BPS 240 format 1
Categories: Polymer; Thermoset; Epoxy

Material Notes: Description: BP240 is a two-ply, partially impregnated epoxy prepreg system designed for the manufacture of Body-in-White (BIW) panels with excellent surface quality from vacuum-only processing at cure temperatures between 85°C and 150°C (185°F and 302°F). The first ply utilizes Cytec’s ZPREG partial impregnation technology, consisting of a structural fabric coupled to a surface scrim and a high performance resin system. The second ply combines low-density syntactic core material and structural fabric to create significant panel rigidity in a rapid laminating format. The system is designed to be ready for painting without abrading or reworking. In many instances, paint can be applied directly to a degreased panel. Excellent environmental performance can be expected from panels painted in Hi-Bake & Lo-Back paint systems.

Features & Benefits:

  • 7 to 30 days out life at 21°C(70°F)
  • 12 months storage at -18°C (0°F)
  • Robust material format for consistent tack, excellent drape and form conformation
  • Material architecture developed for reliable pin-hole-free finish, excellent panel flatness and rigidity
  • High performance resin systems designed for service temperatures up to 106°C(320°F)
  • Excellent physical and environmental performance in painted automotive applications
  • Available, as standard, in carbon fiber and glass fiber variants, either in rolls or in pre-cut kits
  • Recommended for use with high-quality composite or metallic tooling
  • Flame retardant; self-extinguishing when tested to ISO 3795/FMVS302

Information provided by Cytec, subsequently acquired by Solvay.

Vendors: No vendors are listed for this material. Please click here if you are a supplier and would like information on how to add your listing to this material.
 
Physical PropertiesMetricEnglishComments
Storage Temperature -18.0 °C-0.400 °F
 
Mechanical PropertiesMetricEnglishComments
Tensile Strength 162.0 MPa23490 psi0°, Glass
 292.4 MPa42410 psi0°, Carbon
Tensile Modulus 13.9 GPa2020 ksi0°, Glass
 38.0 GPa5510 ksi0°, Carbon
Flexural Strength 402.9 MPa58440 psi0°, Glass
 597.8 MPa86710 psi0°, Carbon
Flexural Modulus 16.0 GPa2320 ksi0°, Glass
 34.1 GPa4950 ksi0°, Carbon
Compressive Strength 356.3 MPa51680 psi0°, Glass
 370.7 MPa53770 psi0°, Carbon
Compressive Modulus 15.5 GPa2250 ksi0°, Glass
 37.0 GPa5370 ksi0°, Carbon
Poissons Ratio 0.0600.0600°, Carbon
 0.190.190°, Glass
Shear Modulus 2.52 GPa366 ksi0°, Glass
 2.90 GPa421 ksi0°, Carbon
Shear Strength 52.7 MPa7640 psi± In-plane, Glass; ASTM D3518
 55.5 MPa8050 psi± In-plane, Carbon; ASTM D3518
 
Thermal PropertiesMetricEnglishComments
CTE, linear 17.1 µm/m-°C9.50 µin/in-°FGlass, Post-cured laminates tested from 30-100°C
 4.20 µm/m-°C
@Temperature 30.0 - 100 °C
2.33 µin/in-°F
@Temperature 86.0 - 212 °F
Carbon, Post-cured laminates
Maximum Service Temperature, Air 106 °C223 °F
Glass Transition Temp, Tg 163 °C325 °FDMA E' onset 1 hr at 120°C + 1 hr at 180°C
 118 °C
@Treatment Temp. 120 °C,
Time 3600 sec
244 °F
@Treatment Temp. 248 °F,
Time 1.00 hour
DMA E' onset
Shrinkage  0.256 %
@Temperature 120 - 180 °C
0.256 %
@Temperature 248 - 356 °F
1 hr at 120°C + 1 hr at 180°C, Carbon
 0.275 %
@Temperature 120 - 180 °C
0.275 %
@Temperature 248 - 356 °F
1 hr at 120°C + 1 hr at 180°C, Glass
 0.067 %
@Temperature 120 °C,
Time 3600 sec
0.067 %
@Temperature 248 °F,
Time 1.00 hour
1 hr at 120°C, Carbon
 0.088 %
@Temperature 120 °C,
Time 3600 sec
0.088 %
@Temperature 248 °F,
Time 1.00 hour
1 hr at 120°C, Glass
 
Processing PropertiesMetricEnglishComments
Cure Time  45.0 min
@Temperature 150 °C
0.750 hour
@Temperature 302 °F
 120 min
@Temperature 100 °C
2.00 hour
@Temperature 212 °F
 300 min
@Temperature 85.0 °C
5.00 hour
@Temperature 185 °F
Shelf Life 12.0 Month12.0 Month

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

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PCYTED129 / 180431

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